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Nanostructured ceramic oxides for supercapacitor applications
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Nanostructured ceramic oxides for supercapacitor applications/ edited by Avinash Balakrishnan and K.R.V. Subramanian.
other author:
Subramanian, K. R. V.
Published:
Boca Raton :CRC Press, : 2014.,
Description:
1 online resource.
Subject:
Nanostructured materials. -
Online resource:
https://www.taylorfrancis.com/books/9780429072062
ISBN:
9781466576919 (electronic bk.)
Nanostructured ceramic oxides for supercapacitor applications
Nanostructured ceramic oxides for supercapacitor applications
[electronic resource] /edited by Avinash Balakrishnan and K.R.V. Subramanian. - Boca Raton :CRC Press,2014. - 1 online resource.
Includes bibliographical references and index.
"In order to develop a high performance supercapacitor, it is generally desirable to design the geometry and morphology of supercapacitor electrode with fully utilized surface area and well defined pore structures, which can lead to faster ion movement contacting the electroactive materials and promote faradic redox reactions. In short, the present book proposes preparation methodology of various one dimensional metal oxide nanostructures used as electrode overlays and methods by which the conductivity of the stochiometric metal oxide can be increased"--
ISBN: 9781466576919 (electronic bk.)
LCCN: 2013036693Subjects--Topical Terms:
557162
Nanostructured materials.
LC Class. No.: TK7872.C65 / N36 2014
Dewey Class. No.: 621.31/5
Nanostructured ceramic oxides for supercapacitor applications
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Nanostructured ceramic oxides for supercapacitor applications
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[electronic resource] /
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edited by Avinash Balakrishnan and K.R.V. Subramanian.
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Boca Raton :
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CRC Press,
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2014.
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1 online resource.
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Includes bibliographical references and index.
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"In order to develop a high performance supercapacitor, it is generally desirable to design the geometry and morphology of supercapacitor electrode with fully utilized surface area and well defined pore structures, which can lead to faster ion movement contacting the electroactive materials and promote faradic redox reactions. In short, the present book proposes preparation methodology of various one dimensional metal oxide nanostructures used as electrode overlays and methods by which the conductivity of the stochiometric metal oxide can be increased"--
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Description based on print version record.
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Oxide ceramics.
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Subramanian, K. R. V.
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Balakrishnan, Avinash.
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https://www.taylorfrancis.com/books/9780429072062
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